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Terahertz technology in biological and chemical sensing for defence

机译:防御生物和化学传感的太赫兹技术

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The terahertz (1 THz = 10~(12) Hz, 3 mm or 33 cm~(-1)) region of the electromagnetic spectrum is typically defined in the frequency range 100 GHz to 10 THz, corresponding to a wavelength range of 3 mm to 30 microns. Owing to a lack of suitable coherent sources and detectors, this region has only been investigated in earnest in the last ten years for terrestrial imaging and spectroscopy applications. Its role in the medical, pharmaceutical, non-destructive testing and more recently security industries is now being examined. The terahertz frequency range is of particular interest since it is able to probe several molecular interactions including the intermolecular vibrations, large amplitude vibrations and twisting and torsional modes. Molecules have also shown polarization sensitivity to the incident terahertz radiation. The ability of terahertz radiation to investigate conformational change makes it an important part of the electromagnetic spectrum. Terahertz radiation has the potential to provide additional information, which may complement other optically based sensing technologies. The use of terahertz technology in the security and defence industry is discussed, with a specific focus on biological and chemical sensing. The challenges faced in bringing terahertz technology into the market place will be discussed.
机译:电磁频谱的太赫兹(1 Thz = 10〜(12)Hz,3mm或33cm〜(-1)区域通常在频率范围为100GHz至10THz中定义,对应于3mm的波长范围30微米。由于缺乏合适的相干来源和探测器,该地区仅在陆地成像和光谱应用中的过去十年中得到了认真研究。目前正在检查其在医疗,制药,非破坏性测试和最近安全行业的作用。太赫兹频率范围特别感兴趣,因为它能够探测包括分子间振动,大振幅振动和扭转和扭转模式的几个分子相互作用。分子也显示出对事件的Terahertz辐射的偏振敏感性。 Terhertz辐射研究构象变化的能力使其成为电磁谱的重要组成部分。太赫兹辐射具有提供额外信息的潜力,可以补充其他光基的传感技术。讨论了三赫兹技术在安全和国防工业中,特别关注生物和化学传感。将讨论将Terahertz技术带入市场的挑战。

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